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  4. Intermittency, an inevitable feature for faster convergence of large eddy simulations
 
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May 22, 2024
Journal Article
Title

Intermittency, an inevitable feature for faster convergence of large eddy simulations

Abstract
Gaussian and intermittent synthetically generated turbulences are investigated as initial conditions for high-resolution numerical simulations. Turbulent fields, namely the Mann and the intermittent Time-mapped Mann model, are injected into large eddy simulations, and subsequently their convergences are investigated. In addition to the usual one-point and two-point characterizations, the higher moments of the velocity increments are addressed to grasp the intermittency. Here, we show that independent of the initial conditions, the evolving turbulence converges to a common state, which is well represented by the classical intermittent turbulence of Kolmogorov. The findings reveal that if the intermittency parameters of the inflow field are adjusted to those of the common state, the convergence behavior is much faster.
Author(s)
Bock, Marcel
Yassin, Khaled
Kassem, Hassan  
Fraunhofer-Institut für Windenergiesysteme IWES  
Theron, Johannes Nicolaas
Fraunhofer-Institut für Windenergiesysteme IWES  
Lukassen, Laura J.
Peinke, Joachim  
Fraunhofer-Institut für Windenergiesysteme IWES  
Journal
Physics of fluids  
DOI
10.1063/5.0202514
Language
English
Fraunhofer-Institut für Windenergiesysteme IWES  
Keyword(s)
  • Probability theory

  • Computational fluid dynamics

  • Turbulence theory and modelling

  • Navier Stokes equations

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